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Modeling of inhomogeneous electromagnetic fields in the nervous system: a novel paradigm in understanding cell interactions disease etiology and therapy

机译:神经系统中非均匀电磁场的建模:理解细胞相互作用疾病病因和治疗的新范式

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摘要

All major processes in the nervous system depend on interactions between cells and nerve fibers. In this work we present a novel model of inhomogeneous electromagnetic fields originating from nerve fibers and delineate their influence on cells. By expanding Hodgkin-Huxley’s applied current into axial current, governed byJij+1=K×Jij, we reveal that cell-with-neuron interactions are regulated by the strength of the electromagnetic fields, which are homogeneous up to 2.066 μm or 6.606 μm away from neurilemma and axolemma, respectively. At the nodes of Ranvier, these fields reach strengths of 3.0 × 10−12T, while at the myelinated segments they only peak at 2.3 × 10−12T. These are the same fields which are, due to inhomogeneity, detected as 1,000 times weaker by magnetoencephalography. Considering the widespread occurrence of neurodegenerative disorders, our model reveals that a 50% demyelination increases the field strength by 0.35 × 10−12T, while a complete demyelination increases it by 0.7 × 10−12T. Since this suggests that the inhomogeneous electromagnetic fields around neurons play a role in physiological and pathological processes, including cell-to-neuron and cell-to-cell communication, their improved understanding opens up new therapeutic strategies based on electromagnetic field modulation or cell’s surface charge alteration.
机译:神经系统中的所有主要过程都取决于细胞与神经纤维之间的相互作用。在这项工作中,我们提出了一种源自神经纤维的不均匀电磁场的新型模型,并描述了它们对细胞的影响。通过将Hodgkin-Huxley的施加电流扩展为轴向电流,由 J i j + < mn> 1 = K × J < / mi> i j ,我们揭示了该单元格与神经元的相互作用受电磁场强度的调节,电磁场在距神经瘤和轴突分别最大至2.066μm或6.606μm的范围内是均匀的。在Ranvier的节点处,这些场的强度达到3.0×10 -12 T,而在有髓鞘的节段中,它们的峰值仅在2.3×10 -12 T处达到峰值。这些都是相同的场,由于不均匀性,通过脑磁图检查发现它们弱了1000倍。考虑到神经退行性疾病的广泛发生,我们的模型表明,50%的脱髓鞘作用可使场强增加0.35××10 −12 T,而完全脱髓鞘作用使场强增加0.7×10 −12 T。由于这表明神经元周围的不均匀电磁场在生理和病理过程中起作用,包括细胞与神经元和细胞与细胞之间的通讯,因此他们对电磁场调制或细胞表面电荷的进一步了解为治疗策略开辟了新的途径改造。

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